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Enhanced Li+ charge storage in naphthalene diimide/vanadium pentoxide intercalates.


ABSTRACT: N,N'-Bis(4-aminophenyl)-1,4,5,8-naphthalene diimide (NDI-ph) was intercalated into lamellar vanadium pentoxide (V2O5) in different amounts to prepare hybrid intercalates. The presence of the imide supports the material's ability to form lithium salts with the structural stabilization of the oxide matrix. This effect is remarkable in charge/discharge cycles in terms of Li+ uptake and discharge by the lamellar intercalates, as we could double the ion uptake capacity (1.27 Li+ per V2O5 unit vs. 0.66 for pure V2O5), enhance the chemical reversibility and double the specific charge capacity (188 mA h g-1 vs. 98 mA h g-1 for pure V2O5) with very small amounts of this imide. This is the first paper dealing with naphthalene diimide intercalates in vanadium pentoxide xerogel for Li+ storage.

SUBMITTER: de Araujo Silva F 

PROVIDER: S-EPMC9081847 | biostudies-literature | 2018 Jun

REPOSITORIES: biostudies-literature

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Enhanced Li<sup>+</sup> charge storage in naphthalene diimide/vanadium pentoxide intercalates.

de Araújo Silva Francisco F   Cicolani Renato Salviato RS   Lima Gilberto G   Huguenin Fritz F   Jean-François Demets Grégoire G  

RSC advances 20180601 42


<i>N</i>,<i>N</i>'-Bis(4-aminophenyl)-1,4,5,8-naphthalene diimide (NDI-ph) was intercalated into lamellar vanadium pentoxide (V<sub>2</sub>O<sub>5</sub>) in different amounts to prepare hybrid intercalates. The presence of the imide supports the material's ability to form lithium salts with the structural stabilization of the oxide matrix. This effect is remarkable in charge/discharge cycles in terms of Li<sup>+</sup> uptake and discharge by the lamellar intercalates, as we could double the ion  ...[more]

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